Holocene palaeoflood events recorded by slackwater deposits along the lower Jinghe River valley, middle Yellow River basin, China
Corresponding Author
Chun Chang Huang
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China.Search for more papers by this authorJiangli Pang
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorXiaochun Zha
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorYali Zhou
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorHongxia Su
School of Tourism and Human Geography, Xi'an International Studies University, Xi'an, Shaanxi, P.R. China
Search for more papers by this authorYuzhu Zhang
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorHengsong Wang
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorHongliang Gu
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorCorresponding Author
Chun Chang Huang
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China.Search for more papers by this authorJiangli Pang
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorXiaochun Zha
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorYali Zhou
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorHongxia Su
School of Tourism and Human Geography, Xi'an International Studies University, Xi'an, Shaanxi, P.R. China
Search for more papers by this authorYuzhu Zhang
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorHengsong Wang
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorHongliang Gu
Department of Geography, Shaanxi Normal University, Xi'an, Shaanxi 710062, P.R. China
Search for more papers by this authorAbstract
Palaeoflood slackwater deposits (SWDs), are the natural record of overbank flooding and are often found within aeolian loess-soil profiles along the river valleys of the middle Yellow River basin. These pedo-stratigraphic sequences are studied using a multi-disciplinarily approach to reconstruct Holocene hydro-climatic variations. Our field investigations along the lower Jinghe River valley have identified palaeoflood SWDs at several sites along the riverbanks based on sedimentological criteria. Analytical results, including magnetic susceptibility, particle-size distribution and concentrations of chemical elements, indicate that these well-sorted palaeoflood SWD beds were deposited from the suspended sediment load in floodwaters. We identify two episodes of extraordinary palaeoflood events along the Jinghe River valley. These hydro-climatic events were dated to 4200–4000 and 3200–2800 a BP, by using the optically stimulated luminescence method in combination with archaeological dating of retrieved anthropogenic remains, and with pedo-stratigraphic correlations with the previously studied Holocene pedo-stratigraphy in the Jinghe River drainage basin. The flooding events are therefore considered to be a regional expression of known climatic events in the northern hemisphere and demonstrate Holocene climate was far from stable. This study provides important data in understanding the interactions between regional hydro-climatic systems and global change in semi-arid and sub-humid regions. Copyright © 2012 John Wiley & Sons, Ltd.
References
- Adamiec G, Aitken MJ. 1998. Dose-rate conversion factors: update. Ancient TL 16: 37– 50.
- Arz HW, Lamy F, Pätzold J. 2006. A pronounced dry event recorded around 4.2 ka in brine sediments from the northern Red Sea. Quaternary Research 66: 432– 441.
- Bai SM, Li HQ, Mao ZL. 2003. The geo-chemical characteristics of the Cretaceous stratigraphy over the Liupanshan Mountains in China. Ningxia Engineering Technology 2(2): 105– 110.
- Baker VR. 1987. Palaeoflood hydrology and extraordinary flood events. Journal of Hydrology 96: 79– 99.
- Baker VR. 2006. Palaeoflood hydrology in a global context. Catena 66: 161– 168.
- Banerjee D, Murray AS, Bøtter-Jensen L, et al. 2001. Equivalent dose estimation using a single aliquot of polymineral fine grains. Radiation Measurements 33: 73– 94.
- Benito G, Thorndycraft VR. 2005. Palaeoflood hydrology and its role in applied hydrological sciences. Journal of Hydrology 313: 3– 15.
- Bond G, Kromer B, Beer J, et al. 2001. Persistent solar influence on North Atlantic climate during the Holocene. Science 294: 2130– 2136.
- Booth RK, Jackson ST, Forman SL, et al. 2005. A severe centennial-scale drought in mid-continental North America 4200 years ago and apparent global linkages. The Holocene 15: 321– 328.
-
Bøtter-Jensen L,
Duller GAT.
1992.
A new system for measuring optically stimulated luminescence from quartz samples.
Nuclear Tracks and Radiation Measurements
20:
549–
553.
10.1016/1359-0189(92)90003-E Google Scholar
- deMenocal PB. 2001. Cultural responses to climate change during the Late Holocene. Science 292: 667– 673.
- Denton GH, Karlén W. 1973. Holocene climatic variations: their pattern and possible cause. Quaternary Research 3: 155– 205.
- Drysdale R, Zanchetta G, Hellstrom J, et al. 2006. Late Holocene drought responsible for the collapse of Old World civilizations is recorded in an Italian cave flowstone. Geology 34: 101– 104.
- Fedotov AP, Chebykin EP, Yu SM, et al. 2004. Changes in the volume and salinity of Lake Khubsugul (Mongolia) in response to global climate changes in the upper Pleistocene and the Holocene. Palaeogeography Palaeoclimatology Palaeoecology 209: 245– 257.
- Friedman GM, Sanders JE, Kopaska-Merkel DC. 1992. Principals of Sedimentary Deposits. Macmillan: New York.
- Gallet S, Jahn BM, Torii M. 1996. Geochemical characterization of the Luochuan loess-palaeosol sequence, China and palaeoclimatic implications. Chemical Geology 133: 67– 88.
- Gasse F. 2000. Hydrological changes in the African tropics since the Last Glacial Maximum. Quaternary Science Reviews 19: 189– 211.
- Grün R. 2003. The Age.exe computer program for the calculation of luminescence dates. RSES: Canberra.
- Gu HL, Huang CC, Zhou YL, et al. 2012. OSL dating study on the palaeoflood events recorded in the Yangguanzhai Neolithic Ruins in the Guanzhong Basin. Geographical Research (in press).
- Huang CC, Zhao SC, Pang JL, et al. 2003. Climatic aridity and the relocations of the Zhou Culture in the Southern Loess Plateau of China. Climatic Change 61(3): 361– 378.
- Huang CC, Pang JL, Zha XC, et al. 2007. Impact of monsoonal climatic change on Holocene overbank flooding along the Sushui River within the Middle Reaches of the Yellow River, China. Quaternary Science Reviews 26: 2247– 2264.
- Huang CC, Pang JL, Su HX, et al. 2009. The Ustic Isohumisol (Chernozem) distributed over the Chinese Loess Plateau: modern soil or palaeosol? Geoderma 150: 344– 358.
- Huang CC, Pang JL, Zha XC, et al. 2010. Extraordinary floods of 4100–4000 a BP recorded at the late Neolithic ruins in the Jinghe River gorges, middle reach of the Yellow River, China. Palaeogeography Palaeoclimatology Palaeoecology 289: 1– 9.
- Huang CC, Pang JL, Zha XC, et al. 2011. Extraordinary floods related to the climatic event at 4200 a BP on the Qishuihe River, middle reaches of the Yellow River, China. Quaternary Science Reviews 30: 460– 468.
- Knox JC. 2000. Sensitivity of modern and Holocene floods to climatic change. Quaternary Science Reviews 19: 439– 457.
- Liu TS. 1988. Loess in China, 2nd edn. Springer-Verlag: Berlin.
- Murray AS, Wintle AG. 2000. Luminescence dating of quartz using an improved single-aliquot regenerative-dose protocol. Radiation Measurements 32: 57– 73.
- Marchant R, Hooghiemstra H. 2004. Rapid environmental change in Africa and South American tropics around 4000 years before present: a review. Earth Science Reviews 66: 217– 260.
- Mayewski PA, Rohling EE, Stager JC, et al. 2004. Holocene climate variability. Quaternary Research 62: 243– 255.
- O'Brien SR, Mayewski PA, Meeker LD, et al. 1995. Complexity of Holocene climate as reconstructed from a Greenland ice core. Science 270: 1962– 1964.
- Peng Y, Xiao J, Nakamura T, et al. 2005. Holocene East Asian monsoonal precipitation pattern revealed by grain-size distribution of core sediments of the Daihai Lake in Inner-Mongolia of North-central China. Earth and Planetary Science Letters 233: 467– 479.
- Said R. 1993. The River Nile. Pergamon: Oxford.
- Song DM. 2000. The Records of Shaanxi Province-Geography. Xi'an, Shaanxi Peoples Press: (in Chinese).
- Stanley JD, Krom MD, Cliff RA, et al. 2003. Nile flow failure at the end of the Old Kingdom, Egypt: Strontium isotopic and petrologic evidence. Geoarchaeology 18(3): 395– 402.
- Staubwasser M, Sirocko F, Grootes PM, et al. 2003. Climate change at 4.2 ka BP termination of the Indus valley civilization and Holocene south Asian monsoon variability. Geographical Research Letters 30: 1425– 1428.
- Sun JZ. 2005. Loessology, Vol. I. Archaeological Society: Hong Kong.
- Talbot MR, Livingstone DA, Palmer DG, et al. 1984. Preliminary results from sediments core from lake Bosumtwi, Ghana. Palaeoecology of Africa 16: 173– 192.
- Wan HL, Huang CC, Pang JL, et al. 2010. Holocene extreme floods in the Baojixia Gorges of the Weihe River. Quaternary Sciences 30(2): 430– 440 (in Chinese).
- Wang J, Huang CC, Pang JL, et al. 2011. Studies of the Holocene palaeoflood slackwater deposit in the lower reaches of the Weihe River. Bulletin of Soil and Water Conservation 31(5): 32– 37 (in Chinese).
- Wang WL, Yuan M, Zhang PC, et al. 2009. Study of the Yangguanzhai Neolithic Ruins in the Gaoling county, Shaanxi Province. Archaeology 7: 3– 9.
- Wu WX, Liu TS. 2004. Possible role of the “Holocene Event 3” on the collapse of Neolithic cultures around the central Plain of China. Quaternary International 117: 153– 166.
- Xun XN, Gao ZD. 1997. Estimation of the maximum rainstorm over the southeast part of the middle reaches of the Yellow River. In: FC Shi, et al. (eds.), The Rainstorms and Floods in the Yellow River Drainage Basin. Zhengzhou, Yellow River Press: 527– 539 (in Chinese).